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用于生物医学应用的 AZ31 合金基底上掺铈的氧化镁薄膜的制备、表征和测试。

Ce-doped MgO films on AZ31 alloy substrate for biomedical applications: preparation, characterization and testing.

机构信息

Research Laboratory of Environmental Sciences and Technologies, Carthage University, BP.1003 Hammam-Lif, 2050 Ben Arous, Tunisia.

Faculty of Mathematical, Physical and Natural Sciences of Tunis, University of Tunis El Manar, Belvedere, Tunis 1002, Tunisia.

出版信息

Biomed Mater. 2024 Jan 23;19(2). doi: 10.1088/1748-605X/ad1dfa.

Abstract

Magnesium ions, MgO nanoparticles and thin films, magnesium alloys and cerium compounds are materials intensively studied due to their corrosion protection, antibacterial and pharmacological properties. In this work, we have designed, prepared and investigated, novel thin films of MgO doped with cerium, deposited on Mg alloy (AZ31) for temporary implants, in order to enhance their life time. More precisely, we report on microstructure and corrosion behavior of MgO pure and doped with 0.1 at % Ce films, fabricated by sol-gel route coupled with spin-coating technique, on AZ31 alloy substrate. A modified sol-gel method that start from magnesium acetylacetonate, cerium nitrate and 2-methoxyethanol (as a stabilizer for the sol) was been used successfully for cerium doped MgO sol precursor preparation. The structure and morphology of the surface of the coatings, before and after immersion for 7-30 d in Hank's solution at 37 °C, were characterized by x-ray diffraction (XRD), scanning electron microscopy, high-resolution transmission electron microscope, x-ray photoelectron spectroscopy and Fourier infrared transmittance spectrum (FT-IR). A comparison between the corrosion protection of undoped MgO and MgO doped with 0.1 at % Ce coatings on the AZ31 alloy substrate is performed by electrochemical tests and immersion tests using open circuit potential and electrochemical impedance spectroscopy in Hank's solution, at 37 °C. The electrochemical results showed that the protection of the AZ31 alloy substrate against corrosion was better with the doped with 0.1 at % Ce MgO film deposited than with pure MgO coting. The investigations of the films after immersion in Hank's solution, at 37 °C, for 7, 21 and 30 d indicated that the grown layer on the film is bone like apatite that suggests a good bioactivity of 0.1 at % Ce-doped MgO coating. Our work demonstrates that the performance corrosion protection of the biodegradable magnesium alloys used for orthopedic applications, in simulated physiological environments (Hank and Ringer) can be enhanced through coating with Cedoped MgO sol-gel thin film.

摘要

镁离子、MgO 纳米粒子和薄膜、镁合金和铈化合物是由于其防腐、抗菌和药理特性而被广泛研究的材料。在这项工作中,我们设计、制备和研究了新型的掺铈氧化镁薄膜,将其沉积在用于临时植入物的镁合金(AZ31)上,以提高其寿命。更准确地说,我们报告了纯氧化镁和掺杂 0.1 原子%铈的氧化镁薄膜的微观结构和腐蚀行为,这些薄膜是通过溶胶-凝胶法结合旋涂技术在 AZ31 合金基底上制备的。我们成功地使用了一种改良的溶胶-凝胶法,该方法从乙酰丙酮镁、硝酸铈和 2-甲氧基乙醇(作为溶胶稳定剂)开始,用于制备掺铈氧化镁溶胶前体。在 37°C 的 Hank's 溶液中浸泡 7-30 天后,涂层的表面结构和形貌通过 X 射线衍射(XRD)、扫描电子显微镜、高分辨率透射电子显微镜、X 射线光电子能谱和傅里叶红外透射光谱(FT-IR)进行了表征。通过在 37°C 的 Hank's 溶液中进行开路电位和电化学阻抗谱的电化学测试和浸泡测试,对未掺杂 MgO 和掺杂 0.1 原子% Ce 的 MgO 涂层在 AZ31 合金基底上的腐蚀保护进行了比较。电化学结果表明,与纯 MgO 涂层相比,沉积的掺杂 0.1 原子% Ce 的 MgO 薄膜对 AZ31 合金基底的腐蚀防护更好。在 37°C 的 Hank's 溶液中浸泡 7、21 和 30 天后对薄膜的研究表明,在薄膜上生长的层是骨样磷灰石,这表明 0.1 原子% Ce 掺杂的 MgO 涂层具有良好的生物活性。我们的工作表明,在模拟生理环境(Hank 和 Ringer)中,用于骨科应用的可生物降解镁合金的腐蚀防护性能可以通过涂覆掺铈 MgO 溶胶-凝胶薄膜来提高。

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